JPH0521154U - Sliding throttle valve type carburetor - Google Patents

Sliding throttle valve type carburetor

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Publication number
JPH0521154U
JPH0521154U JP7686591U JP7686591U JPH0521154U JP H0521154 U JPH0521154 U JP H0521154U JP 7686591 U JP7686591 U JP 7686591U JP 7686591 U JP7686591 U JP 7686591U JP H0521154 U JPH0521154 U JP H0521154U
Authority
JP
Japan
Prior art keywords
throttle valve
sliding throttle
ring
carburetor
sliding
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP7686591U
Other languages
Japanese (ja)
Other versions
JP2536531Y2 (en
Inventor
芳嘉 富沢
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mikuni Corp
Original Assignee
Mikuni Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mikuni Corp filed Critical Mikuni Corp
Priority to JP1991076865U priority Critical patent/JP2536531Y2/en
Publication of JPH0521154U publication Critical patent/JPH0521154U/en
Application granted granted Critical
Publication of JP2536531Y2 publication Critical patent/JP2536531Y2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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  • Control Of Throttle Valves Provided In The Intake System Or In The Exhaust System (AREA)

Abstract

(57)【要約】 【目的】 摺動絞り弁の気化器本体に対する摺動をスム
ーズにし、摺動絞り弁の気密性を保持する。 【構成】 摺動絞り弁17は、気化器本体12に設けら
れたベアリング22によって支持され、吸気通路13、
14を開閉する。摺動絞り弁17の機関側(吸気管負圧
を受ける側)の面にリング状溝23を形成し、このリン
グ状シール部材24をリング状溝23内に嵌合する。リ
ング状シール部材24は、摺動絞り弁17が吸気通路1
3、14を閉塞した状態において、吸気通路13、14
の外周縁部に重合し、吸気管負圧を受けて気化器本体1
2の端面に密着する。
(57) [Summary] [Purpose] To make the sliding throttle valve slide smoothly with respect to the carburetor body, and to maintain the airtightness of the sliding throttle valve. [Structure] The sliding throttle valve 17 is supported by a bearing 22 provided on the carburetor main body 12, and the intake passage 13,
Open and close 14. A ring-shaped groove 23 is formed on the surface of the sliding throttle valve 17 on the engine side (the side that receives the negative pressure of the intake pipe), and this ring-shaped sealing member 24 is fitted into the ring-shaped groove 23. In the ring-shaped seal member 24, the sliding throttle valve 17 has the intake passage 1
In the state where 3 and 14 are closed, the intake passages 13 and 14 are
Is superposed on the outer peripheral edge of the carburetor and receives the negative pressure of the intake pipe, and the carburetor body 1
It adheres to the end face of 2.

Description

【考案の詳細な説明】[Detailed description of the device]

【0001】[0001]

【産業上の利用分野】[Industrial applications]

本考案は、内燃機関へ混合気を供給制御する気化器に関し、特に摺動絞り弁を 備えた気化器に関する。 The present invention relates to a carburetor for supplying and controlling an air-fuel mixture to an internal combustion engine, and more particularly to a carburetor having a sliding throttle valve.

【0002】[0002]

【従来の技術】[Prior Art]

摺動絞り弁型気化器は、摺動絞り弁が吸気通路に直交する方向に摺動自在に設 けられて、この吸気通路を開閉するように構成される。従来、この摺動絞り弁が 塵埃の詰まり等によって摺動しにくくなるのを防止するため、例えば特開昭62 −199953号公報において次のような構成が提案されている。 The sliding throttle valve type carburetor is configured so that the sliding throttle valve is slidable in a direction orthogonal to the intake passage and opens and closes the intake passage. Conventionally, in order to prevent the sliding throttle valve from becoming difficult to slide due to clogging of dust or the like, for example, Japanese Patent Laid-Open No. 62-199953 proposes the following structure.

【0003】 すなわち、この摺動絞り弁型気化器において、ベアリングやローラ等の回転機 構が摺動絞り弁に取付けられて、摺動絞り弁の摺動が円滑化され、また摺動絞り 弁と気化器本体との間の気密性を確保するため、摺動絞り弁は主絞り弁と副絞り 弁の2ピースから構成されている。副絞り弁は、吸気管負圧によって気化器本体 側に寄せつけられ、これにより吸気通路の内外の気密が保持される。また、副絞 り弁の背面には吸気負圧を作用させ、機関の減速時等に副絞り弁を気化器本体側 に吸引する力を低減させてその摺動抵抗を抑えることが試みられている。That is, in this sliding throttle valve type carburetor, rotary mechanisms such as bearings and rollers are attached to the sliding throttle valve to smooth the sliding of the sliding throttle valve, and the sliding throttle valve. The sliding throttle valve consists of two pieces, a main throttle valve and a sub-throttle valve, in order to ensure airtightness between the main throttle valve and the carburetor body. The sub-throttle valve is brought closer to the carburetor main body side by the negative pressure of the intake pipe, thereby maintaining the airtightness inside and outside the intake passage. In addition, it has been attempted to reduce the sliding resistance by applying suction negative pressure to the back surface of the auxiliary throttle valve to reduce the force of sucking the auxiliary throttle valve to the carburetor body side during deceleration of the engine. There is.

【0004】[0004]

【考案が解決しようとする課題】[Problems to be solved by the device]

しかしながら上記構成によると、主絞り弁は回転機構のためにスムーズな摺動 を示すが、副絞り弁は吸気管負圧によって気化器本体に強く寄せつけられ、減速 時等のように吸気管負圧の大きい時には、気密性は良いがある程度の絞り弁復帰 力が必要となる。また、摺動絞り弁が2つの部材から成るために構成が複雑とな る。 本考案は、摺動絞り弁の気化器本体に対する摺動がスムーズであり、かつ摺動 絞り弁と気化器本体との間の充分な気密性が保持される摺動絞り弁型気化器を得 ることを目的としている。 However, according to the above configuration, the main throttle valve shows smooth sliding due to the rotating mechanism, but the sub throttle valve is strongly attracted to the carburetor main body by the negative pressure of the intake pipe, and the negative pressure of the intake pipe is reduced as in deceleration. When the value is large, airtightness is good, but some throttle valve return force is required. Further, the sliding throttle valve is composed of two members, which complicates the structure. The present invention provides a sliding throttle valve type carburetor in which sliding of the sliding throttle valve with respect to the carburetor body is smooth and sufficient airtightness between the sliding throttle valve and the carburetor body is maintained. The purpose is to

【0005】[0005]

【課題を解決するための手段】[Means for Solving the Problems]

本考案に係る摺動絞り弁型気化器は、吸気通路を形成された気化器本体と、こ の気化器本体に摺動自在に設けられ、上記吸気通路を開閉可能である摺動絞り弁 と、この摺動絞り弁の吸気管負圧を受ける側の面に固定され、この摺動絞り弁の 閉塞状態において上記吸気通路の外周縁部に重合して上記気化器本体に密着する リング状シール部材とを備えたことを特徴としている。 A sliding throttle valve type carburetor according to the present invention comprises a carburetor main body having an intake passage formed therein, and a sliding throttle valve slidably provided in the carburetor main body and capable of opening and closing the intake passage. , A ring-shaped seal that is fixed to the surface of the sliding throttle valve that receives negative pressure in the intake pipe and, when the sliding throttle valve is in the closed state, overlaps with the outer peripheral edge of the intake passage and adheres to the carburetor body. And a member.

【0006】[0006]

【実施例】【Example】

以下図示実施例により、本考案を説明する。 図1は本考案の第1実施例を示す図である。この図において、一体的に連結さ れた気化器本体11、12には、同一軸方向に吸気通路13、14が形成されて いる。図の左側に位置する吸気通路13が大気に連通する上流側通路で、右側に 位置する吸気通路14が機関に連通する下流側通路である。すなわち吸気通路1 4側に、機関によって発生する吸気管負圧が作用する。吸気通路13、14を垂 直に横断する方向(紙面に垂直な方向)に延びる空間16内には、板状の摺動絞 り弁17が設けられる。この摺動絞り弁17は、図示しないアクセル機構と連動 して空間16内を摺動し、吸気通路13、14を開閉させる。 The present invention will be described below with reference to illustrated embodiments. FIG. 1 is a diagram showing a first embodiment of the present invention. In this figure, intake passages 13 and 14 are formed in the same axial direction in the carburetor main bodies 11 and 12 that are integrally connected. The intake passage 13 located on the left side of the drawing is an upstream passage communicating with the atmosphere, and the intake passage 14 located on the right side is a downstream passage communicating with the engine. That is, the intake pipe negative pressure generated by the engine acts on the intake passage 14 side. A plate-like sliding throttle valve 17 is provided in a space 16 extending in a direction that vertically crosses the intake passages 13 and 14 (a direction perpendicular to the paper surface). The sliding throttle valve 17 slides in the space 16 in conjunction with an accelerator mechanism (not shown) to open and close the intake passages 13 and 14.

【0007】 摺動絞り弁17の吸気通路14側、すなわち吸気管負圧を受ける側の面には、 図1の紙面に垂直な方向に延びる2本の平行な直線溝18が形成され、各直線溝 18内には、それぞれ帯状のシム19が設けられる。これらの直線溝18に対向 して、気化器本体12の端面には、2本の直線溝21が形成され、各直線溝21 には、それぞれ複数個のベアリング22が設けられる。Two parallel straight grooves 18 extending in a direction perpendicular to the plane of FIG. 1 are formed on the surface of the sliding throttle valve 17 on the intake passage 14 side, that is, on the side receiving the intake pipe negative pressure. A band-shaped shim 19 is provided in each linear groove 18. Two straight grooves 21 are formed on the end surface of the carburetor main body 12 so as to face the straight grooves 18, and each straight groove 21 is provided with a plurality of bearings 22.

【0008】 また、摺動絞り弁17の吸気通路14側の面であって2つの直線溝18よりも 内側には、リング状溝23が形成され、このリング状溝23内にはリング状シー ル部材24が嵌合される。すなわちリング状シール部材24は、摺動絞り弁17 の摺動方向(紙面に垂直な方向)にはこの摺動絞り弁17と一体的に移動するが 、吸気通路13、14の軸方向に対しては、摺動絞り弁17に対して変位可能あ る。したがってリング状シール部材24は、摺動絞り弁17が吸気通路13、1 4を閉塞した状態において、吸気通路13、14の外周縁部に重合し、吸気通路 14内に発生する吸気管負圧を受けて気化器本体12の端面に密着する。A ring-shaped groove 23 is formed on the surface of the sliding throttle valve 17 on the intake passage 14 side and inside the two linear grooves 18, and a ring-shaped seal 23 is formed in the ring-shaped groove 23. The rule member 24 is fitted. That is, the ring-shaped seal member 24 moves integrally with the sliding throttle valve 17 in the sliding direction of the sliding throttle valve 17 (direction perpendicular to the paper surface), but with respect to the axial directions of the intake passages 13 and 14. However, it can be displaced with respect to the sliding throttle valve 17. Therefore, the ring-shaped seal member 24 is superposed on the outer peripheral edge portions of the intake passages 13 and 14 when the sliding throttle valve 17 closes the intake passages 13 and 14, and the intake pipe negative pressure generated in the intake passage 14 is generated. Upon receipt, it comes into close contact with the end surface of the carburetor body 12.

【0009】 リング状シール部材24は、作動性と耐久性に優れた材料から成形される。こ れらの諸条件を満たす材料としては、樹脂(例えばフッ素系)、またはフッ素コ ーティングしたセラミックもしくは金属が適している。The ring-shaped seal member 24 is molded from a material having excellent operability and durability. Resins (for example, fluorine-based), or fluorine-coated ceramics or metals are suitable as materials satisfying these conditions.

【0010】 図2は、摺動絞り弁17とリング状シール部材24を分解して示す。摺動絞り 弁17の面に形成されたリング状溝23の内周側には、円板状部25が形成され る。リング状溝23の外形は、完全な円ではなく、摺動絞り弁17の底面17a において直線部23aとなっている。リング状シール部材24はリング状溝23 と実質的に同じ形状であり、摺動絞り弁17の底面17aに対応した直線部24 aを有する。FIG. 2 is an exploded view of the sliding throttle valve 17 and the ring-shaped seal member 24. A disk-shaped portion 25 is formed on the inner peripheral side of the ring-shaped groove 23 formed on the surface of the sliding throttle valve 17. The outer shape of the ring-shaped groove 23 is not a perfect circle but is a straight portion 23a on the bottom surface 17a of the sliding throttle valve 17. The ring-shaped sealing member 24 has substantially the same shape as the ring-shaped groove 23, and has a linear portion 24 a corresponding to the bottom surface 17 a of the sliding throttle valve 17.

【0011】 図3は、リング状シール部材24の吸気通路14内に臨む部分と摺動絞り弁1 7の円板状部25とを示す。この図において、ハッチングを施して示すドーナツ 状の部分Aは、吸気通路14内に臨む部分である。すなわち、このドーナツ状部 分Aの外径は吸気通路14の内径(ボア径)に合致しており、したがってドーナ ツ状部分Aは、吸気管負圧がリング状シール部材24に作用する受圧面である。 また円板状部25は、吸気管負圧が摺動絞り弁17に作用する受圧面である。FIG. 3 shows a portion of the ring-shaped seal member 24 facing the inside of the intake passage 14 and a disc-shaped portion 25 of the sliding throttle valve 17. In this figure, a donut-shaped portion A shown by hatching is a portion facing the inside of the intake passage 14. That is, the outer diameter of the donut-shaped portion A matches the inner diameter (bore diameter) of the intake passage 14, and therefore the donut-shaped portion A has a pressure receiving surface on which the intake pipe negative pressure acts on the ring-shaped seal member 24. Is. The disk-shaped portion 25 is a pressure receiving surface on which the intake pipe negative pressure acts on the sliding throttle valve 17.

【0012】 リング状シール部材24の気化器本体12の端面に対する吸着力、すなわちリ ング状シール部材24に作用する吸気通路14側への吸引力は、このリング状シ ール部材24の受圧面積(ドーナツ状部分Aの面積)を適当な大きさに設定する ことによって調整される。これにより、必要最小限の吸着力によって所望のシー ル性を得ることができる。The suction force of the ring-shaped seal member 24 with respect to the end surface of the carburetor main body 12, that is, the suction force acting on the ring-shaped seal member 24 toward the intake passage 14 is the pressure-receiving area of the ring-shaped seal member 24. It is adjusted by setting the (area of the donut-shaped portion A) to an appropriate size. As a result, the desired sealability can be obtained with the minimum required suction force.

【0013】 摺動絞り弁17は円板状部25を介して吸気管負圧を受け、吸気通路14側へ 吸引されるが、ベアリング22によって支持されるため、気化器本体12の端面 から受ける摺動抵抗は小さい。したがって、摺動絞り弁17の開閉動作は非常に スムーズである。The sliding throttle valve 17 receives the negative pressure of the intake pipe through the disc-shaped portion 25 and is sucked toward the intake passage 14 side, but is supported by the bearing 22, and therefore is received from the end surface of the carburetor main body 12. Sliding resistance is small. Therefore, the opening / closing operation of the sliding throttle valve 17 is very smooth.

【0014】 このように本実施例において、摺動絞り弁17の開閉動作は、摺動絞り弁17 が受ける吸気管負圧によって実質的に影響を受けず、この吸気管負圧による摺動 絞り弁17のシール性は、リング状シール部材24によって得られる。そして、 このリング状シール部材24の受圧面積は吸気管14のボアの断面積よりも小さ いため、減速時等のように吸気管負圧が大きい時であっても、リング状シール部 材24に過大な吸引力は作用せず、適度な気密性を保持しつつ、摺動絞り弁17 を小さい力で開放することができる。As described above, in the present embodiment, the opening / closing operation of the sliding throttle valve 17 is not substantially affected by the intake pipe negative pressure received by the sliding throttle valve 17, and the sliding throttle due to this intake pipe negative pressure is used. The sealing property of the valve 17 is obtained by the ring-shaped sealing member 24. Since the pressure-receiving area of the ring-shaped seal member 24 is smaller than the cross-sectional area of the bore of the intake pipe 14, the ring-shaped seal member 24 is protected even when the intake pipe negative pressure is large such as during deceleration. An excessive suction force does not act, and the sliding throttle valve 17 can be opened with a small force while maintaining an appropriate airtightness.

【0015】 また本実施例において、摺動絞り弁17は、従来のように2つの部材(主絞 り弁と副絞り弁)から構成されるのではなく、1つの部材から構成されており、 気密性は摺動絞り弁17に固定されたリング状シール部材24によって得られて いる。したがって、摺動絞り弁17の構成が簡単となり、ひいては気化器のコス トを低減させることが可能となる。In addition, in the present embodiment, the sliding throttle valve 17 is not composed of two members (main throttle valve and sub throttle valve) as in the conventional case, but is formed of one member, The airtightness is obtained by the ring-shaped sealing member 24 fixed to the sliding throttle valve 17. Therefore, the structure of the sliding throttle valve 17 is simplified, and the cost of the carburetor can be reduced.

【0016】 さらに本実施例では、リング状シール部材24が摺動絞り弁17に固定されて いるため、摺動絞り弁17の開放状態においてリング状シール部材24が吸気通 路13、14内に露出せず、したがってリング状溝18内に燃料が入り込むおそ れはない。Further, in this embodiment, since the ring-shaped seal member 24 is fixed to the sliding throttle valve 17, the ring-shaped seal member 24 is placed in the intake passages 13 and 14 when the sliding throttle valve 17 is open. It is not exposed and therefore there is no risk of fuel entering the ring groove 18.

【0017】 図4は本考案の第2実施例を示すものである。 第1実施例と同一部分は同一符号によって示し、異なる部分についてのみ説明 する。 摺動絞り弁17に形成されたリング状溝23の底部には、バネ孔31が形成さ れ、このバネ孔31内にはバネ32が配設される。このバネ32はリング状シー ル部材24を気化器本体12側に付勢する。その他の構成は、第1実施例と同様 である。FIG. 4 shows a second embodiment of the present invention. The same parts as those in the first embodiment are designated by the same reference numerals, and only different parts will be described. A spring hole 31 is formed in the bottom of the ring-shaped groove 23 formed in the sliding throttle valve 17, and a spring 32 is arranged in the spring hole 31. The spring 32 urges the ring-shaped seal member 24 toward the carburetor body 12 side. Other configurations are the same as those in the first embodiment.

【0018】 この第2実施例の構成によれば、第1実施例と同じ効果が得られるが、さらに 次のような効果も得られる。すなわち、リング状シール部材24のシール性は、 吸気管負圧だけでなく、バネ32の弾発力によっても得られる。したがって、リ ング状シール部材24の受圧面積を第1実施例よりも小さくすることができ、例 えば、リング状シール部材24の内径を吸気通路14のボア径と同じにして閉弁 状態において受圧面積が0になるようにすることも可能である。According to the configuration of the second embodiment, the same effect as that of the first embodiment can be obtained, but the following effect can also be obtained. That is, the sealing property of the ring-shaped seal member 24 is obtained not only by the negative pressure of the intake pipe but also by the elastic force of the spring 32. Therefore, the pressure receiving area of the ring-shaped seal member 24 can be made smaller than that in the first embodiment. For example, the inner diameter of the ring-shaped seal member 24 is made the same as the bore diameter of the intake passage 14 to receive the pressure in the closed state. It is also possible to make the area zero.

【0019】 なお、バネ32はコイルバネでもよいが、適当な弾性部材を適用することがで きる。The spring 32 may be a coil spring, but an appropriate elastic member can be applied.

【0020】[0020]

【考案の効果】[Effect of the device]

以上のように本考案によれば、摺動絞り弁の気化器本体に対する摺動がスムー ズとなり、また摺動絞り弁と気化器本体との間の充分な気密性が保持される。 As described above, according to the present invention, the sliding movement of the sliding throttle valve with respect to the carburetor body is smooth, and sufficient airtightness between the sliding throttle valve and the carburetor body is maintained.

【図面の簡単な説明】[Brief description of drawings]

【図1】本考案の第1実施例に係る摺動絞り弁型気化器
を示す断面図である。
FIG. 1 is a sectional view showing a sliding throttle valve type carburetor according to a first embodiment of the present invention.

【図2】摺動絞り弁とリング状シール部材を分解して示
す斜視図である。
FIG. 2 is a perspective view showing an exploded view of a sliding throttle valve and a ring-shaped seal member.

【図3】リング状シール部材の吸気通路内に臨む部分と
摺動絞り弁の円板状部とを示す図である。
FIG. 3 is a view showing a portion of the ring-shaped seal member facing the intake passage and a disc-shaped portion of the sliding throttle valve.

【図4】本考案の第2実施例に係る摺動絞り弁型気化器
を示す断面図である。
FIG. 4 is a sectional view showing a sliding throttle valve type carburetor according to a second embodiment of the present invention.

【符号の説明】[Explanation of symbols]

11、12 気化器本体 13、14 吸気通路 17 摺動絞り弁 23 リング状溝 24 リング状シール部材 11, 12 Vaporizer body 13, 14 Intake passage 17 Sliding throttle valve 23 Ring groove 24 Ring seal member

Claims (2)

【実用新案登録請求の範囲】[Scope of utility model registration request] 【請求項1】 吸気通路を形成された気化器本体と、こ
の気化器本体に摺動自在に設けられ、上記吸気通路を開
閉可能である摺動絞り弁と、この摺動絞り弁の吸気管負
圧を受ける側の面に固定され、この摺動絞り弁の閉塞状
態において上記吸気通路の外周縁部に重合して上記気化
器本体に密着するリング状シール部材とを備えたことを
特徴とする摺動絞り弁型気化器。
1. A carburetor main body having an intake passage, a sliding throttle valve slidably provided in the carburetor main body and capable of opening and closing the intake passage, and an intake pipe of the sliding throttle valve. A ring-shaped seal member that is fixed to the surface on the side that receives negative pressure and that overlaps with the outer peripheral edge portion of the intake passage when the sliding throttle valve is in a closed state and adheres closely to the carburetor body. Sliding throttle valve type carburetor.
【請求項2】 上記リング状シール部材が上記摺動絞り
弁の面に形成されたリング状溝内に嵌合されることを特
徴とする請求項1の摺動絞り弁型気化器。
2. The sliding throttle valve type carburetor according to claim 1, wherein the ring-shaped sealing member is fitted in a ring-shaped groove formed on the surface of the sliding throttle valve.
JP1991076865U 1991-08-29 1991-08-29 Sliding throttle valve carburetor Expired - Lifetime JP2536531Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1991076865U JP2536531Y2 (en) 1991-08-29 1991-08-29 Sliding throttle valve carburetor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1991076865U JP2536531Y2 (en) 1991-08-29 1991-08-29 Sliding throttle valve carburetor

Publications (2)

Publication Number Publication Date
JPH0521154U true JPH0521154U (en) 1993-03-19
JP2536531Y2 JP2536531Y2 (en) 1997-05-21

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
JP1991076865U Expired - Lifetime JP2536531Y2 (en) 1991-08-29 1991-08-29 Sliding throttle valve carburetor

Country Status (1)

Country Link
JP (1) JP2536531Y2 (en)

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6439885U (en) * 1987-08-31 1989-03-09

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6439885U (en) * 1987-08-31 1989-03-09

Also Published As

Publication number Publication date
JP2536531Y2 (en) 1997-05-21

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